用于HFAC应用的开关电容多输入七电平逆变器

P. S. Dash, Shyama P Das
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引用次数: 0

摘要

本文开发了一种用于高频交流(HFAC)应用的开关电容衍生多级逆变器(SCMLI)。该逆变器采用不等直流电压源作为输入。它在有多个直流电源的地方很有用,例如,可再生能源系统、交流微电网、燃料电池和电动汽车。与现有的开关电容器多级配置相比,这种拓扑结构提供了更高的电压水平和足够的无功功率支持,并且功率电子开关更少。电容器电压平衡是不需要的,因为它在逆变器输出的每个周期充电两次。在连接多个直流电源时,需要逆变器并联运行。该逆变器通过同时连接多个电源来解决这一问题。采用选择性消谐波脉宽调制(SHE-PWM)技术使输出电流中的高次谐波最小化。对逆变器的不同工作模式进行了充分详细的说明。搭建了多级逆变器的硬件样机。实验和仿真结果验证了逆变器的预期性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Switched-Capacitor Multi-Input Seven-Level Inverter for HFAC Applications
In this paper, a switched-capacitor-derived multi-level inverter (SCMLI) is developed for high-frequency-ac (HFAC) applications. The proposed inverter uses unequal dc voltage sources as its input. It is useful where multiple dc sources with a common ground are available, e.g., renewable energy systems, ac microgrids, fuel cells, and electric vehicles. This topology gives higher voltage levels and adequate reactive power support with fewer power-electronic switches than the existing switched-capacitor multi-level configurations. Capacitor voltage balancing is not required as it’s charged twice in each cycle of the inverter output. Parallel operation of inverters is required while connecting several dc sources. The proposed inverter solves this problem by connecting multiple sources at once. Selective-harmonic-elimination pulse width modulation (SHE-PWM) technique is used to minimize the higher-order harmonics in the output current. Different operating modes of the inverter are explained in adequate detail. A hardware prototype is assembled for the proposed multi-level inverter. The experimental and simulation results corroborate the expected performance of the proposed inverter.
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